The availability of a number of methods to controllably adsorb DNA on solid surfaces is useful to researchers working in different fields, such as structural biology, biophysical chemistry, diagnostics, sensorics, and nanotechnology. In this paper, we review some of the methods that have been devised in the last years to solve this problem. Thanks to the Scanning Force Microscope, we have recently been able to study the dynamics of DNA molecules adsorbed on mica. From the statistical analysis of the shapes of properly designed DNA molecules, we have also discovered an unexpected base-sequence specificity in the adsorption of intrinsically curved DNA molecules on mica
One of the key innovations in biomolecular science over the past 50 years has been the ability to di...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
The adsorption of DNA molecules on mica surface and the following desorption of DNA molecules at eth...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
One of the key innovations in biomolecular science over the past 50 years has been the ability to di...
One of the key innovations in biomolecular science over the past 50 years has been the ability to di...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
The adsorption of DNA molecules on mica surface and the following desorption of DNA molecules at eth...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
One of the key innovations in biomolecular science over the past 50 years has been the ability to di...
One of the key innovations in biomolecular science over the past 50 years has been the ability to di...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...